Sanders James D, Owen October N, Tran Brian H, Mosqueira Jeffrey L, Marty Michael T
Department of Chemistry and Biochemistry and Bio5 Institute, University of Arizona, Tucson, Arizona 85721, United States.
Anal Chem. 2024 Oct 22;96(42):16743-16749. doi: 10.1021/acs.analchem.4c03248. Epub 2024 Oct 11.
Charge detection mass spectrometry (CD-MS) is a powerful technique for the analysis of large, heterogeneous biomolecules. By directly measuring the charge states of individual ions, CD-MS can measure the masses from spectra where conventional deconvolution approaches fail due to the lack of isotopic resolution or distinguishable charge states. However, CD-MS is inherently slow because hundreds or thousands of spectra need to be collected to produce adequate ion statistics. The slower speed of CD-MS complicates efforts to couple it with online separation techniques, which limit the number of spectra that can be acquired during a chromatographic peak. Here, we present the application of Hadamard transform multiplexing to online size exclusion chromatography (SEC) coupled with Orbitrap CD-MS, with a goal of using SEC for separating complex mixtures prior to CD-MS analysis. We developed a microcontroller to deliver pulsed injections from a large sample loop onto a SEC for online CD-MS analysis. Data showed a series of peaks spaced according to the pseudorandom injection sequence, which were demultiplexed with a Hadamard transform algorithm. The demultiplexed data revealed improved CD-MS signals while preserving retention time information. This multiplexing approach provides a general solution to the inherent incompatibilities of online separations and CD-MS detection that will enable a range of applications.
电荷检测质谱法(CD-MS)是一种用于分析大型、异质生物分子的强大技术。通过直接测量单个离子的电荷状态,CD-MS能够从光谱中测量质量,而在这些光谱中,由于缺乏同位素分辨率或可区分的电荷状态,传统的去卷积方法失效。然而,CD-MS本质上速度较慢,因为需要收集数百或数千个光谱才能产生足够的离子统计数据。CD-MS较慢的速度使得将其与在线分离技术联用变得复杂,这限制了在色谱峰期间可以采集的光谱数量。在此,我们展示了将哈达玛变换复用应用于与轨道阱CD-MS联用的在线尺寸排阻色谱法(SEC),目的是在CD-MS分析之前使用SEC分离复杂混合物。我们开发了一个微控制器,用于将来自大样品环的脉冲进样输送到SEC上进行在线CD-MS分析。数据显示了一系列根据伪随机进样序列间隔的峰,这些峰通过哈达玛变换算法进行解复用。解复用后的数据显示CD-MS信号得到改善,同时保留了保留时间信息。这种复用方法为在线分离和CD-MS检测的固有不兼容性提供了一个通用解决方案,将能够实现一系列应用。